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High Temperature NPSH and Its Application for a Feedwater System

机译:高温NPSH及其在给水系统中的应用。

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摘要

Eight hundred MWe class PWR turbine-generators operated smoothly and continuously at sudden load reduction from full load to house load, maintaining NPSH of the feedwater booster pumps through transition even though the available NPSH never exceeded zero. NPSH of the pump at 151.3℃, at which the available NPSH was minimal during transition, was evaluated as a slightly negative value, in spite of a positive value at room temperature, applying both the Ruggeri-Moore method extended to the negative area on condition of gas venting out of the system, using data of both room temperature and 95℃ of a model pump facility, and another restriction by gas presence at the impeller inlet. The above evaluated high temperature NPSH demonstrated successful operation of the units equipped with a low static suction head yielding zero available NPSH during transition, resulting in alteration of the design criteria of the feedwater system and thereby contributing to possible cost reduction.
机译:800台MWe级PWR涡轮发电机在从满负荷到房屋负荷的突然负荷降低的情况下平稳连续地运行,即使可用的NPSH从未超过零,也可以通过过渡来维持给水增压泵的NPSH。尽管在室温下为正值,但在151.3℃时泵的NPSH在过渡期间可用NPSH最小的情况下,仍被评估为略微负值,同时采用了Ruggeri-Moore方法将条件扩展到负值使用模型泵设施的室温和95℃的数据以及系统叶轮入口处存在气体的另一个限制条件,将气体排出系统。上述评估的高温NPSH展示了配备低静态吸头的装置的成功运行,在过渡过程中产生的可用NPSH为零,从而改变了给水系统的设计标准,从而有助于降低成本。

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